Burton Jordan B, Carruthers Nicholas J, Hou Zhanjun, Matherly Larry H, Stemmer Paul M
Institute of Environmental Health Sciences, Wayne State University, Detroit, MI 48202, USA.
Bioinformatics Core, University of Michigan, Ann Arbor, MI 48109, USA.
Proteomes. 2022 May 23;10(2):18. doi: 10.3390/proteomes10020018.
Localization of organelle proteins by isotope tagging (LOPIT) maps are a coordinate-directed representation of proteome data that can aid in biological interpretation. Analysis of organellar association for proteins as displayed using LOPIT is evaluated and interpreted for two types of proteomic data sets. First, test and control group protein abundances and fold change data obtained in a proximity labeling experiment are plotted on a LOPIT map to evaluate the likelihood of true protein interactions. Selection of true positives based on co-localization of proteins in the organellar space is shown to be consistent with carboxylase enrichment which serves as a positive control for biotinylation in streptavidin affinity selected proteome data sets. The mapping in organellar space facilitates discrimination between the test and control groups and aids in identification of proteins of interest. The same representation of proteins in organellar space is used in the analysis of extracellular vesicle proteomes for which protein abundance and fold change data are evaluated. Vesicular protein organellar localization patterns provide information about the subcellular origin of the proteins in the samples which are isolates from the extracellular milieu. The organellar localization patterns are indicative of the provenance of the vesicular proteome origin and allow discrimination between proteomes prepared using different enrichment methods. The patterns in LOPIT displays are easy to understand and compare which aids in the biological interpretation of proteome data.
通过同位素标记进行细胞器蛋白质定位(LOPIT)图谱是蛋白质组数据的一种坐标导向表示形式,有助于生物学解释。针对两种类型的蛋白质组数据集,对使用LOPIT展示的蛋白质的细胞器关联进行分析、评估和解释。首先,将在邻近标记实验中获得的测试组和对照组蛋白质丰度及倍数变化数据绘制在LOPIT图谱上,以评估真实蛋白质相互作用的可能性。基于蛋白质在细胞器空间中共定位选择真阳性结果,结果表明这与羧化酶富集一致,羧化酶富集可作为链霉亲和素亲和选择蛋白质组数据集中生物素化的阳性对照。在细胞器空间中的映射有助于区分测试组和对照组,并有助于鉴定感兴趣的蛋白质。在分析细胞外囊泡蛋白质组时,使用了蛋白质在细胞器空间中的相同表示形式,对蛋白质丰度和倍数变化数据进行评估。囊泡蛋白质的细胞器定位模式提供了有关从细胞外环境分离的样品中蛋白质亚细胞来源的信息。细胞器定位模式表明了囊泡蛋白质组来源的出处,并允许区分使用不同富集方法制备的蛋白质组。LOPIT展示中的模式易于理解和比较,这有助于蛋白质组数据的生物学解释。